Unraveling the microbiome of a thermophilic biogas plant by metagenome and metatranscriptome analysis complemented by characterization of bacterial and archaeal isolates

@article{Maus2016UnravelingTM,
  title={Unraveling the microbiome of a thermophilic biogas plant by metagenome and metatranscriptome analysis complemented by characterization of bacterial and archaeal isolates},
  author={I. Maus and D. E. Koeck and K. Cibis and S. Hahnke and Y. S. Kim and T. Langer and Jana Kreubel and M. Erhard and A. Bremges and S. Off and Yvonne Stolze and S. Jaenicke and A. Goesmann and A. Sczyrba and P. Scherer and H. König and W. Schwarz and V. Zverlov and W. Liebl and A. P{\"u}hler and A. Schl{\"u}ter and M. Klocke},
  journal={Biotechnology for Biofuels},
  year={2016},
  volume={9}
}
BackgroundOne of the most promising technologies to sustainably produce energy and to mitigate greenhouse gas emissions from combustion of fossil energy carriers is the anaerobic digestion and biomethanation of organic raw material and waste towards biogas by highly diverse microbial consortia. In this context, the microbial systems ecology of thermophilic industrial-scale biogas plants is poorly understood.ResultsThe microbial community structure of an exemplary thermophilic biogas plant was… Expand
Metagenome, metatranscriptome, and metaproteome approaches unraveled compositions and functional relationships of microbial communities residing in biogas plants
Genomics and prevalence of bacterial and archaeal isolates from biogas-producing microbiomes
Targeted in situ metatranscriptomics for selected taxa from mesophilic and thermophilic biogas plants
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